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Combined shape and topology optimization for sound barrier by using the isogeometric boundary element method

机译:采用异诊边界元法,晶体屏障的组合形状和拓扑优化

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摘要

This study presents a combined shape and topology optimization method for designing sound barriers by using the isogeometric boundary element method. The objective function of combined optimization is defined as the sound pressure in reference plane. The sensitivity analysis for the combined optimization is conducted by using either the direct differentiation method or the adjoint variable method. For a shape design, the design variables are the positions of control points in isogeometric analysis, which can control the barrier shape flexibly. In the topology update, the artificial density of an integral element is selected as the design variable to find the optimal distribution of sound absorbing material (SAM) on the barrier surface. In the combined optimization process, the shape and SAM distribution of the sound barrier can be changed in each iteration process to improve the noise reduction. Four different iteration schemes for combined optimization are compared to find an effective one. Numerical tests are provided to demonstrate the validity and efficiency of the proposed methods.
机译:本研究介绍了一种通过使用异诊边界元方法来设计声障的组合形状和拓扑优化方法。组合优化的目标函数被定义为参考平面中的声压。通过使用直接分化方法或伴随变量方法进行组合优化的灵敏度分析。对于形状设计,设计变量是异诊测分析中的控制点的位置,可以灵活地控制屏障形状。在拓扑更新中,选择整体元件的人造密度作为设计变量,以找到阻挡表面上的吸声材料(SAM)的最佳分布。在组合的优化过程中,在每次迭代过程中可以改变声屏障的形状和SAM分布,以提高降噪。比较组合优化的四种不同迭代方案,以找到有效的优化。提供了数值测试以证明所提出的方法的有效性和效率。

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